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Experimental investigation of partially entangled states for device-independent randomness generation and self-testing protocols

机译:用于设备无关的随机发电和自我检测协议部分纠缠态的实验研究

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Previous theoretical works showed that all pure two-qubit entangled states can generate one bit of local randomness and can be self-tested through the violation of proper Bell inequalities. We report an experiment in which nearly pure partially entangled states of photonic qubits are produced to investigate these tasks in a practical scenario. We show that small deviations from the ideal situation make low entangled states impractical to self-testing and randomness generation using the available techniques. Our results show that in practice lower entanglement implies lower randomness generation, recovering the intuition that maximally entangled states are better candidates for device-independent quantum information processing.
机译:以前的理论作品表明,所有纯两种纠缠的国家都可以产生一点局部随机性,并且可以通过违反适当的贝尔不等式进行自我测试。 我们报告了一个实验,其中产生了几乎纯的部分纠缠状态的光子Qubits状态,以在实际情况下调查这些任务。 我们表明,使用可用技术的自测和随机性产生的小偏差使得低纠缠的状态使得不发布。 我们的研究结果表明,在实践中,较低的纠缠意味着较低的随机性产生,恢复最大纠缠状态的直觉是用于无关的量子信息处理的更好候选者。

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